Stamer W D, Roberts B C, Epstein D L
Department of Ophthalmology, Duke University Medical Center, Durham, North Carolina, USA.
Invest Ophthalmol Vis Sci. 1999 Aug;40(9):1983-8.
Fluid flow across various endothelia results in a variety of intracellular and extracellular adaptations. In the living eye, aqueous humor flows across the surface of endothelial cells on trabecular meshwork (TM) beams and in the juxtacanalicular tissue and through or between a continuous monolayer of endothelial cells that line Schlemm's canal (SC). This study was undertaken to test the hypothesis that fluid flow induces biochemical changes in the endothelial cells of the outflow pathway that may modify outflow resistance.
Trabecular meshwork and SC cells isolated from the outflow pathway of human cadaveric eyes were seeded onto porous filters, placed in Ussing-type chambers, and subjected to fluid flow driven by a pressure head of 15 mm Hg on their apical surface. Cell lysates were prepared and analyzed for adenosine 3',5'-cyclic monophosphate (cAMP) accumulation. Barrier function of cell monolayers was examined using transendothelial electrical resistance measurements.
Three different SC cell strains in 14 independent experiments responded with at least a threefold increase in cAMP that was both time and pressure dependent. Conversely, flow-treated TM cells failed to respond in six independent experiments in which five different TM cell strains were used. Electrical resistance across cell monolayers positively correlated with cAMP accumulation and was calcium sensitive.
cAMP signaling is affected by pressure differentials across SC cell monolayers and provides evidence for the participation of SC cells in the regulation of aqueous outflow.
流体流经各种内皮细胞会导致多种细胞内和细胞外适应性变化。在活体眼中,房水穿过小梁网(TM)小梁和近小管组织上的内皮细胞表面,并通过或在构成施莱姆管(SC)内衬的连续单层内皮细胞之间流动。本研究旨在检验以下假设:流体流动会诱导流出途径内皮细胞发生生化变化,从而可能改变流出阻力。
从人尸体眼的流出途径分离出的小梁网和SC细胞接种到多孔滤膜上,置于尤斯灌流室中,并在其顶端表面施加15 mmHg压头驱动的流体流动。制备细胞裂解物并分析3',5'-环磷酸腺苷(cAMP)积累情况。使用跨内皮电阻测量来检测细胞单层的屏障功能。
在14项独立实验中,三种不同的SC细胞株的cAMP至少增加了三倍,且具有时间和压力依赖性。相反,在使用五种不同TM细胞株的六项独立实验中,经流体处理的TM细胞没有反应。跨细胞单层的电阻与cAMP积累呈正相关,且对钙敏感。
cAMP信号传导受SC细胞单层上的压力差影响,为SC细胞参与房水流出调节提供了证据。